Micro manufacturing using micro direct metal deposition was successfully implemented on NiTi powder alloy. Micro direct metal deposition was optimized through a set of process parameters and designed experiments to improve the geometrical accuracy and repeatability of micro fabrication. Scanning electron microscopy and micro X-ray computed tomography were used to analyze the surface quality, micro porosity, and deviations of products with respect to nominal geometrical models. Results showed that increasing scanning speed is an efficient way to improve the surface quality and decrease the micro porosity content. Below 15% deviation to nominal geometrical models was achieved in hollow NiTi samples through a set of micro direct metal depositi...
NiTi parts have been produced by two net-shape manufacturing techniques: metal injection moulding (M...
A NiTi shape memory alloy, known as nitinol, has been intensively studied for last five decades. The...
Metal three-dimensional (3D) printing, formally known as metal additive manufacturing (AM), has beco...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
In this research, a micro direct metal deposition process, newly developed as a potential method for...
Nowadays many devices are produced in very small sizes or containing small features for particular a...
Nickel–titanium (NiTi) is a shape-memory alloy, a type of material whose name is derived from its ab...
NiTi components with reproducible and stable shape memory properties are attractive for various tech...
This study focuses on the influence of additive manufacturing process strategies on the specimen geo...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
Within the last years, shape memory alloys based on NiTi gained increasing interest especially for b...
Nickel-Titanium alloys have been of high research interest in recent years due to their shape memory...
Powder metallurgy is an attractive production method for complex-shaped NiTi parts. Pre-alloyed NiTi...
The primary objective of this research was to develop paste formulations to enable the fabrication o...
NiTi alloys are well known not only due to their exceptional shape-memory ability to recover their p...
NiTi parts have been produced by two net-shape manufacturing techniques: metal injection moulding (M...
A NiTi shape memory alloy, known as nitinol, has been intensively studied for last five decades. The...
Metal three-dimensional (3D) printing, formally known as metal additive manufacturing (AM), has beco...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
In this research, a micro direct metal deposition process, newly developed as a potential method for...
Nowadays many devices are produced in very small sizes or containing small features for particular a...
Nickel–titanium (NiTi) is a shape-memory alloy, a type of material whose name is derived from its ab...
NiTi components with reproducible and stable shape memory properties are attractive for various tech...
This study focuses on the influence of additive manufacturing process strategies on the specimen geo...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
Within the last years, shape memory alloys based on NiTi gained increasing interest especially for b...
Nickel-Titanium alloys have been of high research interest in recent years due to their shape memory...
Powder metallurgy is an attractive production method for complex-shaped NiTi parts. Pre-alloyed NiTi...
The primary objective of this research was to develop paste formulations to enable the fabrication o...
NiTi alloys are well known not only due to their exceptional shape-memory ability to recover their p...
NiTi parts have been produced by two net-shape manufacturing techniques: metal injection moulding (M...
A NiTi shape memory alloy, known as nitinol, has been intensively studied for last five decades. The...
Metal three-dimensional (3D) printing, formally known as metal additive manufacturing (AM), has beco...